On-bead Reconstitution into Bilayers via Cell-free Transcription and Translation (ORB-TXTL), a platform that uses compositionally tunable lipid bilayer-coated silica beads as scaffolds for cell-free synthesized interacting and integral membrane proteins, is developed.
Abstract
Membrane proteins achieve a remarkable range of cellular functions, yet their characterization at high throughputs remains difficult with standard reconstitution methods. Here, we develop On-bead Reconstitution into Bilayers via Cell-free Transcription and Translation (ORB-TXTL), a platform that uses compositionally tunable lipid bilayer-coated silica beads as scaffolds for cell-free synthesized interacting and integral membrane proteins. ORB-TXTL is fast as it just takes a few hours to integrate membrane proteins onto the beads, which can be extensively washed and seamlessly transferred between reaction buffers, to perform assays that are read out by standard laboratory equipment without tagging and sophisticated equipment. We first characterized the lipid interactions of the mechanosensitive channel MscL, then screened 169 E. coli proteins and identified a systematic dependence of membrane integration efficiency on the number of transmembrane domains. Finally, we functionally reconstituted the E. coli phospholipid synthesis pathway, demonstrating that ORB-TXTL is a tractable and cheap chassis for multi-enzyme membrane biochemistry.
The current protocol outlines a method for membrane purification utilizing ultracentrifugation and detergents, which facilitates the isolation of membrane proteins in their native conformational state.
A. Anjali, W. A. Khan, A. Arockiasamy et al.· Methods in molecular biology· 0 citations
Membrane proteins play essential roles in drug targeting and biological signal regulation, and planar lipid bilayer systems provide a powerful platform for single-molecule electrophysiological analyses. However, conventional reconstitution methods suffer from low incorporation efficiency and random orientation of prote...
Examination of model membrane systems composed of giant unilamellar vesicles and droplet-embedded vesicles incorporating defined phospholipid and neutral lipid compositions reveals the biophysical features that favor ABHD5 association with LD-like monolayers and provides new mechanistic insight into how cells target re...
Shahnaz Parveen, Arvin Nazari, James Stebelton et al.· bioRxiv· 0 citations
A generalizable workflow for producing soluble receptor domains from membrane proteins is established and validated HasR constructs suitable for downstream ligand-screening applications, including aptamer and nanobody discovery.
Federico Bosetto, Maria Zacharopoulou, M. Bycroft et al.· bioRxiv· 0 citations
Engineering vesicle-based artificial cells capable of mimicking cellular processes is a central objective in synthetic biology. However, while giant unilamellar vesicles (GUVs) have become a popular artificial cell platform, the impact of fundamental design features remains obscure. Here, we assembled GUVs composed p...
Jordi Ventura-Cobos, Ángela Morellá-Aucejo, Bastiaan C. Buddingh' et al.· ACS Synthetic Biology· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.